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Jin-Shin Lai

3 accepted papers

2020

Velocity Field based Active-Assistive Control for Upper Limb Rehabilitation Exoskeleton Robot

ICRA 2020poster

There are limitations of conventional active-assistive control for upper limb rehabilitation exoskeleton robot, such as 1). prior time-dependent trajectories are generally required, 2). task-based rehabilitation exercise involving multi-joint motion is hard to implement, and 3). assistive mechanism…

Cited by 8SourceScholar
2019

Deep Learning based Motion Prediction for Exoskeleton Robot Control in Upper Limb Rehabilitation

ICRA 2019poster

The synchronization of the movement between exoskeleton robot and human arm is crucial for Robot-assisted training (RAT) in upper limb rehabilitation. In this paper, we propose a deep learning based motion prediction model which is applied to our recently developed 8 degrees-of-freedom (DoFs) upper…

Cited by 83SourceScholar
2016

Active control with force sensor and shoulder circumduction implemented on exoskeleton robot NTUH-II

IROS 2016poster

Many neurological or orthopedic disorders may cause motor impairments of shoulder. Patients require intensive training in order to recover from those impairments. However, the intensive training will lead to growing demand for strenuous work. Robot-aided therapy is able to alleviate the therapist's…

Cited by 9SourceScholar